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受汞污染河流附近鸟类的肾上腺皮质反应和甲状腺激素水平受到抑制。

Suppressed adrenocortical responses and thyroid hormone levels in birds near a mercury-contaminated river.

作者信息

Wada Haruka, Cristol Daniel A, McNabb F M Anne, Hopkins William A

机构信息

Department of Fisheries and Wildlife Sciences, Virginia Polytechnic Institute and State University, 100 Cheatham Hall, Blacksburg, Virginia 24061, USA.

出版信息

Environ Sci Technol. 2009 Aug 1;43(15):6031-8. doi: 10.1021/es803707f.

Abstract

Much of the research on sublethal, adverse effects of mercury (Hg) has focused on impairment of neurological function and reproduction in fish and fish-eating vertebrates. Here we examined the associations between Hg and endocrine function (adrenocortical responses and plasma thyroid hormone concentrations) of insectivorous tree swallow nestlings adjacent to a Hg-contaminated river and nearby reference rivers in Virginia. Nestlings from the contaminated sites had blood Hg concentrations that exceeded those from the reference sites by more than an order of magnitude (354 +/- 22 vs 17 +/- 1 ppb wet weight). A regression of age and Hg concentrations suggested dietary Hg at the contaminated sites exceeded the nestlings' capacity to eliminate Hg through deposition into growing feathers. Although blood Hg concentrations among nestlings at the contaminated sites were lower than those typically associated with abnormal behavior or altered physiology in young birds, adrenocortical responses, plasma triiodothyronine, and thyroxin concentrations were suppressed, relative to reference levels, by the end of the nestling period. These results suggest that (1) Hg may disrupt endocrine systems of terrestrial avian young and (2) adverse effects of Hg on endocrine systems may be most evident once endocrine axes are fully developed.

摘要

许多关于汞(Hg)亚致死性不良影响的研究都集中在鱼类以及以鱼为食的脊椎动物的神经功能损害和繁殖方面。在此,我们研究了弗吉尼亚州一条受汞污染河流及附近参考河流附近食虫树燕雏鸟的汞含量与内分泌功能(肾上腺皮质反应和血浆甲状腺激素浓度)之间的关联。受污染地点的雏鸟血液汞浓度比参考地点的雏鸟高出一个多数量级(湿重分别为354±22与17±1 ppb)。年龄与汞浓度的回归分析表明,受污染地点的雏鸟通过将汞沉积到生长羽毛中进行汞清除的能力,无法应对饮食中的汞含量。尽管受污染地点雏鸟的血液汞浓度低于通常与幼鸟异常行为或生理变化相关的浓度,但到雏鸟期结束时,相对于参考水平,其肾上腺皮质反应、血浆三碘甲状腺原氨酸和甲状腺素浓度均受到抑制。这些结果表明:(1)汞可能会扰乱陆生幼鸟的内分泌系统;(2)汞对内分泌系统的不良影响可能在内分泌轴完全发育后最为明显。

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